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中国油料作物学报 ›› 2022, Vol. 44 ›› Issue (6): 1182-1189.doi: 10.19802/j.issn.1007-9084.2021260

• 种质资源 遗传育种 • 上一篇    下一篇

甘蓝型油菜杂交种圣光168父本根肿病抗性的遗传改良与应用

熊梅1(), 杨光圣1,2, 洪登峰1,2, 王朝阳1()   

  1. 1.华中农业大学作物遗传改良国家重点实验室,湖北 武汉,430070
    2.洪山实验室,湖北 武汉,430070
  • 收稿日期:2021-10-15 出版日期:2022-12-25 发布日期:2022-11-24
  • 通讯作者: 王朝阳 E-mail:1454026298@qq.com;wzyyhhn@163.com
  • 作者简介:熊梅(1994- ),女,硕士,主要从事油菜育种研究,E-mail: 1454026298@qq.com
  • 基金资助:
    作物遗传改良国家重点实验室开放课题(ZK201909);国家油菜产业技术体系专项(CARS-12)

Genetic improvement and application of resistance to clubroot in male parent of Brassica napus hybrid Shengguang 168

Mei XIONG1(), Guang-sheng YANG1,2, Deng-feng HONG1,2, Zhao-yang WANG1()   

  1. 1.National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China
    2.Hongshan Laboratory, Wuhan 430070, China
  • Received:2021-10-15 Online:2022-12-25 Published:2022-11-24
  • Contact: Zhao-yang WANG E-mail:1454026298@qq.com;wzyyhhn@163.com

摘要:

为培育优良的抗根肿病油菜品种,以华双5R和华油杂62R(分别携带抗根肿病位点PbBa8.1CRb)为供体亲本,以圣光168的父本Y522R为轮回亲本,通过回交与分子辅助育种相结合,将PbBa8.1CRb导入到Y522R中,选育出遗传背景回复率均达90%以上,且分别携带PbBa8.1CRbPbBa8.1+CRb抗病位点的近等基因系Y522R PbBa8.1 、Y522R CRb 、Y522R PbBa8.1+CRb,并在此基础上与圣光168母本RG430A配制了具有根肿病抗性的改良杂交种圣光168CR PbBa8.1 、圣光168CR CRb 和圣光168CR PbBa8.1+CRb。利用我国根肿菌4号优势生理小种,对改良株系及杂交种进行苗期根肿病抗性鉴定,结果表明:Y522R PbBa8.1+CRb 和Y522R CRb 改良株系及其改良杂交种圣光168CR CRb 和圣光168CR PbBa8.1+CRb 对4号生理小种具有免疫抗性;Y522R PbBa8.1 改良株系及其改良杂交种圣光168CR PbBa8.1 对4号生理小种表现为感病,但显著低于对照Y522R及圣光168。农艺性状考察结果表明,Y522R改良株系及其改良杂交种的开花期、株高、有效分枝数、角果长、每角果粒数和千粒重都与对照无显著性差异,说明这些改良杂交种可作为重要的抗根肿病油菜资源。

关键词: 甘蓝型油菜, 根肿病, PbBa8.1抗病位点, CRb抗病位点, 抗病育种

Abstract:

To improve rapeseed resistance to clubroot, Huashuang 5R (carrying PbBa8.1 locus) and Huayouza 62R (carrying CRb locus) were used as donor parents for transferring resistant genes into Y522R. The strategy was combined with successive backcross and marker-assisted selection. By the process, 3 near isogenic lines Y522R PbBa8.1, Y522R CRb and Y522R PbBa8.1+CRb (containing PBba8.1, CRb, and PbBa8.1+CRb respectively) were obtained, with more than 90% genetic background recover rate. Subsequently, 3 clubroot resistant new hybrids Shengguang 168CR PbBa8.1, Shengguang 168CR CRb and Shengguang 168CR PbBa8.1+CRb were derived from these near isogenic lines and RG430A (female parent of Shengguang 168). The clubroot resistance of the above lines (as Y522R PbBa8.1, Y522R CRb, Y522R PbBa8.1+CRb,Shengguang 168CR PbBa8.1, Shengguang 168CR CRb and Shengguang 168CR PbBa8.1+CRb ) was identified by using Race 4 (the dominant physiological race in China). Results showed that Y522R CRb, Y522R PbBa8.1+CRb and their hybrids (Shengguang 168CR CRb and Shengguang 168CR PbBa8.1+CRb ) had immunity to Race 4. Although Y522R PbBa8.1 and hybrid Shengguang 168CR PbBa8.1 were susceptible to Race 4, their levels of the resistance were still significantly higher than those of the control (Y522R and Shengguang 168). Evaluation of agronomic traits showed that no significant differences were observed between the improved lines and Y522R, neither between the improved hybrids and Shengguang 168. The traits included flowering days, plant height, effective branches, silique length, seeds per silique and thousand seeds weight. Thus laid an important foundation for cultivation of excellent rape varieties resistant to clubroot.

Key words: Brassica napus L., clubroot disease, PbBa8.1 resistance locus, CRb resistance locus, resistant breeding

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